Anopheles gambiae : silencing increases permethrin toxicity (Lycett et al., 2006)
Helicoverpa armigera : silencing increases fenvalerate toxicity (Tang et al., 2012)
Cimex lectularius : silencing increases deltamethrin toxicity(Zhu et al., 2012)
Nilaparvata lugens :silencing increases toxicity of cypermethrin and imidacloprid (Liu et al., 2014)
Bactrocera dorsalis : silencing increases malathion toxicity (Huang et al., 2015)
Tetranychus cinnabarius : silencing increases toxicity of fenpropathrin (Shi et al., 2015)
Laodelphax striatellus :silencing increases buprofezin toxicity (Zhang et al., 2016)
Locusta migratoria : silencing increases carbaryl toxicity (Zhang et al., 2017)
Nilaparvata lugens: silencing inhibits ability to feed on HYH15 (BPH resistant)rice (Peng et al., 2017)
Bemisia tabaci : silencing increases imidacloprid toxicity (He et al., 2019)
Spodoptera litura : silencing increases phoxim toxicity (Ji et al., 2019)
Sitophilus zeamais : silencing increases terpinene-4-ol susceptibility (Huang et al., 2019)
Tetranychus urticae : silencing increases toxicity of multiple acaricides (Adesanya et al., 2020)
Diaphorina citri : silencing increases imidacloprid and thiamethoxam toxicity (Yuan et al., 2021)
Spodoptera litura: silencing increases indoxacarb toxicity (Shi et al., 2021)
Acyrthosiphon pisum : silencing decreases desiccation tolerance and increases insecticide toxicity (Qiao et al.,2021)
Nilaparvata lugens : silencing decreases desiccation tolerance, CHC levels and ovarian function (Wang et al., 2022)
Nilaparvata lugens :silencing increases toxicity of sulfoxaflor and neonicotinoids (He et al., 2023)
Aphis gossypii :silencing increases toxicity of sulfoxaflor (Tang et al., 2023)